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A V Finkelstein

Showing results (11-20 of 76) with videos related to

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Folding & Design|May 5, 1998
Folding rate dependence on the chain length of RNA-like heteropolymersO Galzitskaya, A V Finkelstein
Journal of Computational Biology : a Journal of Computational Molecular Cell Biology|October 17, 1998
How homologs can help to predict protein folds even though they cannot be predicted for individual sequencesBadretdinov AYa, A V Finkelstein
Folding & Design|January 1, 1997
Rate of protein folding near the point of thermodynamic equilibrium between the coil and the most stable chain foldA V Finkelstein, Badretdinov AYa
Protein Engineering|October 2, 2001
Cunning simplicity of protein folding landscapesN S Bogatyreva, A V Finkelstein
Molekuliarnaia Biologiia|May 18, 2019
[Protein Biosynthesis Proofreading Is Closely Associated with the Existence of Factor-Free Ribosomal Synthesis]A V Finkelstein, L P Gavrilova
Bio Systems|January 1, 1993
Computation of biopolymers: a general approach to different problemsA V Finkelstein, M A Roytberg
Quarterly Reviews of Biophysics|August 1, 1980
Similarities of protein topologies: evolutionary divergence, functional convergence or principles of folding?O B Ptitsyn, A V Finkelstein
Protein Engineering|May 1, 1996
Search for the most stable folds of protein chains: II. Computation of stable architectures of beta-proteins using a self-consistent molecular field theoryB A Reva, A V Finkelstein
Journal of Molecular Biology|December 28, 1971
Statistical analysis of the correlation among amino acid residues in helical, beta-structural and non-regular regions of globular proteinsA V Finkelstein, O B Ptitsyn
Molekuliarnaia Biologiia|July 15, 2016
[Calculation of mobility and entropy of the binding of molecules by crystals]S O Garbuzynskiy, A V Finkelstein
Pageof 8

Showing results (11-20 of 76) with videos related to

Sort By:
Pageof 8
Folding & Design|May 5, 1998
Folding rate dependence on the chain length of RNA-like heteropolymersO Galzitskaya, A V Finkelstein
Journal of Computational Biology : a Journal of Computational Molecular Cell Biology|October 17, 1998
How homologs can help to predict protein folds even though they cannot be predicted for individual sequencesBadretdinov AYa, A V Finkelstein
Folding & Design|January 1, 1997
Rate of protein folding near the point of thermodynamic equilibrium between the coil and the most stable chain foldA V Finkelstein, Badretdinov AYa
Protein Engineering|October 2, 2001
Cunning simplicity of protein folding landscapesN S Bogatyreva, A V Finkelstein
Molekuliarnaia Biologiia|May 18, 2019
[Protein Biosynthesis Proofreading Is Closely Associated with the Existence of Factor-Free Ribosomal Synthesis]A V Finkelstein, L P Gavrilova
Bio Systems|January 1, 1993
Computation of biopolymers: a general approach to different problemsA V Finkelstein, M A Roytberg
Quarterly Reviews of Biophysics|August 1, 1980
Similarities of protein topologies: evolutionary divergence, functional convergence or principles of folding?O B Ptitsyn, A V Finkelstein
Protein Engineering|May 1, 1996
Search for the most stable folds of protein chains: II. Computation of stable architectures of beta-proteins using a self-consistent molecular field theoryB A Reva, A V Finkelstein
Journal of Molecular Biology|December 28, 1971
Statistical analysis of the correlation among amino acid residues in helical, beta-structural and non-regular regions of globular proteinsA V Finkelstein, O B Ptitsyn
Molekuliarnaia Biologiia|July 15, 2016
[Calculation of mobility and entropy of the binding of molecules by crystals]S O Garbuzynskiy, A V Finkelstein
Pageof 8